This patch updates InternalRequest and InternalResponse such that it parses the URL passed to it at creation time, rather than when the channel is created. This should improve the behaviour of these types around Blob URLs, so that extra state, such as the "revoked" flag, is calculated at the correct time as-per spec. While making this change, I noticed that a previous Cache DB migration could insert an "" URL in the DB when migrating from a single response URL to a URL list, rather than storing an empty URL list. The choice was made to do filtering when reading, rather than performing a migration, to avoid migration first-time start-up overhead. Differential Revision: https://phabricator.services.mozilla.com/D276047
392 lines
12 KiB
C++
392 lines
12 KiB
C++
/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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#include "PreloaderBase.h"
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#include "mozilla/dom/Document.h"
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#include "mozilla/glean/NetwerkMetrics.h"
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#include "nsContentUtils.h"
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#include "nsIAsyncVerifyRedirectCallback.h"
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#include "nsIHttpChannel.h"
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#include "nsILoadGroup.h"
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#include "nsIInterfaceRequestorUtils.h"
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#include "nsIRedirectResultListener.h"
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#include "nsNetUtil.h"
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// Change this if we want to cancel and remove the associated preload on removal
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// of all <link rel=preload> tags from the tree.
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constexpr static bool kCancelAndRemovePreloadOnZeroReferences = false;
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namespace mozilla {
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PreloaderBase::UsageTimer::UsageTimer(PreloaderBase* aPreload,
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dom::Document* aDocument)
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: mDocument(aDocument), mPreload(aPreload) {}
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class PreloaderBase::RedirectSink final : public nsIInterfaceRequestor,
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public nsIChannelEventSink,
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public nsIRedirectResultListener {
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virtual ~RedirectSink();
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public:
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NS_DECL_THREADSAFE_ISUPPORTS
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NS_DECL_NSIINTERFACEREQUESTOR
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NS_DECL_NSICHANNELEVENTSINK
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NS_DECL_NSIREDIRECTRESULTLISTENER
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RedirectSink(PreloaderBase* aPreloader, nsIInterfaceRequestor* aCallbacks);
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RedirectSink() = delete;
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private:
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MainThreadWeakPtr<PreloaderBase> mPreloader;
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nsCOMPtr<nsIInterfaceRequestor> mCallbacks;
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nsCOMPtr<nsIChannel> mRedirectChannel;
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};
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PreloaderBase::RedirectSink::RedirectSink(PreloaderBase* aPreloader,
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nsIInterfaceRequestor* aCallbacks)
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: mPreloader(aPreloader), mCallbacks(aCallbacks) {}
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PreloaderBase::RedirectSink::~RedirectSink() = default;
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NS_IMPL_ISUPPORTS(PreloaderBase::RedirectSink, nsIInterfaceRequestor,
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nsIChannelEventSink, nsIRedirectResultListener)
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NS_IMETHODIMP PreloaderBase::RedirectSink::AsyncOnChannelRedirect(
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nsIChannel* aOldChannel, nsIChannel* aNewChannel, uint32_t aFlags,
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nsIAsyncVerifyRedirectCallback* aCallback) {
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MOZ_DIAGNOSTIC_ASSERT(NS_IsMainThread());
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mRedirectChannel = aNewChannel;
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// Deliberately adding this before confirmation.
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nsCOMPtr<nsIURI> uri;
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aNewChannel->GetOriginalURI(getter_AddRefs(uri));
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if (mPreloader) {
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mPreloader->mRedirectRecords.AppendElement(
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RedirectRecord(aFlags, uri.forget()));
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}
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if (mCallbacks) {
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nsCOMPtr<nsIChannelEventSink> sink(do_GetInterface(mCallbacks));
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if (sink) {
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return sink->AsyncOnChannelRedirect(aOldChannel, aNewChannel, aFlags,
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aCallback);
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}
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}
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aCallback->OnRedirectVerifyCallback(NS_OK);
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return NS_OK;
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}
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NS_IMETHODIMP PreloaderBase::RedirectSink::OnRedirectResult(nsresult status) {
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if (NS_SUCCEEDED(status) && mRedirectChannel) {
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mPreloader->mChannel = std::move(mRedirectChannel);
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} else {
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mRedirectChannel = nullptr;
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}
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if (mCallbacks) {
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nsCOMPtr<nsIRedirectResultListener> sink(do_GetInterface(mCallbacks));
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if (sink) {
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return sink->OnRedirectResult(status);
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}
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}
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return NS_OK;
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}
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NS_IMETHODIMP PreloaderBase::RedirectSink::GetInterface(const nsIID& aIID,
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void** aResult) {
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NS_ENSURE_ARG_POINTER(aResult);
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if (aIID.Equals(NS_GET_IID(nsIChannelEventSink)) ||
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aIID.Equals(NS_GET_IID(nsIRedirectResultListener))) {
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return QueryInterface(aIID, aResult);
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}
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if (mCallbacks) {
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return mCallbacks->GetInterface(aIID, aResult);
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}
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*aResult = nullptr;
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return NS_ERROR_NO_INTERFACE;
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}
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PreloaderBase::~PreloaderBase() { MOZ_ASSERT(NS_IsMainThread()); }
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// static
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void PreloaderBase::AddLoadBackgroundFlag(nsIChannel* aChannel) {
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nsLoadFlags loadFlags;
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aChannel->GetLoadFlags(&loadFlags);
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aChannel->SetLoadFlags(loadFlags | nsIRequest::LOAD_BACKGROUND);
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}
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void PreloaderBase::NotifyOpen(const PreloadHashKey& aKey,
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dom::Document* aDocument, bool aIsPreload,
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bool aIsModule) {
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if (aDocument) {
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DebugOnly<bool> alreadyRegistered =
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aDocument->Preloads().RegisterPreload(aKey, this);
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// This means there is already a preload registered under this key in this
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// document. We only allow replacement when this is a regular load.
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// Otherwise, this should never happen and is a suspected misuse of the API.
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MOZ_ASSERT_IF(alreadyRegistered, !aIsPreload);
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}
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mKey = aKey;
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mIsUsed = !aIsPreload;
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// Start usage timer for rel="preload", but not for rel="modulepreload"
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// because modules may be loaded for functionality the user does not
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// immediately interact with after page load (e.g. a docs search box)
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if (!aIsModule && !mIsUsed && !mUsageTimer) {
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auto callback = MakeRefPtr<UsageTimer>(this, aDocument);
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NS_NewTimerWithCallback(getter_AddRefs(mUsageTimer), callback, 10000,
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nsITimer::TYPE_ONE_SHOT);
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}
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ReportUsageTelemetry();
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}
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void PreloaderBase::NotifyOpen(const PreloadHashKey& aKey, nsIChannel* aChannel,
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dom::Document* aDocument, bool aIsPreload,
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bool aIsModule) {
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NotifyOpen(aKey, aDocument, aIsPreload, aIsModule);
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mChannel = aChannel;
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nsCOMPtr<nsIInterfaceRequestor> callbacks;
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mChannel->GetNotificationCallbacks(getter_AddRefs(callbacks));
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RefPtr<RedirectSink> sink(new RedirectSink(this, callbacks));
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mChannel->SetNotificationCallbacks(sink);
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}
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void PreloaderBase::NotifyUsage(dom::Document* aDocument,
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LoadBackground aLoadBackground) {
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if (!mIsUsed && mChannel && aLoadBackground == LoadBackground::Drop) {
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nsLoadFlags loadFlags;
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mChannel->GetLoadFlags(&loadFlags);
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// Preloads are initially set the LOAD_BACKGROUND flag. When becoming
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// regular loads by hitting its consuming tag, we need to drop that flag,
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// which also means to re-add the request from/to it's loadgroup to reflect
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// that flag change.
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if (loadFlags & nsIRequest::LOAD_BACKGROUND) {
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nsCOMPtr<nsILoadGroup> loadGroup;
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mChannel->GetLoadGroup(getter_AddRefs(loadGroup));
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if (loadGroup) {
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nsresult status;
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mChannel->GetStatus(&status);
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nsresult rv = loadGroup->RemoveRequest(mChannel, nullptr, status);
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mChannel->SetLoadFlags(loadFlags & ~nsIRequest::LOAD_BACKGROUND);
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if (NS_SUCCEEDED(rv)) {
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loadGroup->AddRequest(mChannel, nullptr);
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}
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}
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}
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}
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mIsUsed = true;
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ReportUsageTelemetry();
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CancelUsageTimer();
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if (mIsEarlyHintsPreload) {
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aDocument->Preloads().SetEarlyHintUsed();
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}
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}
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void PreloaderBase::RemoveSelf(dom::Document* aDocument) {
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if (aDocument) {
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aDocument->Preloads().DeregisterPreload(mKey);
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}
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}
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void PreloaderBase::NotifyRestart(dom::Document* aDocument,
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PreloaderBase* aNewPreloader) {
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RemoveSelf(aDocument);
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mKey = PreloadHashKey();
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CancelUsageTimer();
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if (aNewPreloader) {
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aNewPreloader->mNodes = std::move(mNodes);
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}
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}
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void PreloaderBase::NotifyStart(nsIRequest* aRequest) {
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// If there is no channel assigned on this preloader, we are not between
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// channel switching, so we can freely update the mShouldFireLoadEvent using
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// the given channel.
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if (mChannel && !SameCOMIdentity(aRequest, mChannel)) {
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return;
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}
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nsCOMPtr<nsIHttpChannel> httpChannel = do_QueryInterface(aRequest);
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if (!httpChannel) {
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return;
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}
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// if the load is cross origin without CORS, or the CORS access is rejected,
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// always fire load event to avoid leaking site information.
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nsresult rv;
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nsCOMPtr<nsILoadInfo> loadInfo = httpChannel->LoadInfo();
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mShouldFireLoadEvent =
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loadInfo->GetTainting() == LoadTainting::Opaque ||
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(loadInfo->GetTainting() == LoadTainting::CORS &&
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(NS_FAILED(httpChannel->GetStatus(&rv)) || NS_FAILED(rv)));
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}
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void PreloaderBase::NotifyStop(nsIRequest* aRequest, nsresult aStatus) {
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// Filter out notifications that may be arriving from the old channel before
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// restarting this request.
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if (!SameCOMIdentity(aRequest, mChannel)) {
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return;
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}
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NotifyStop(aStatus);
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}
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void PreloaderBase::NotifyStop(nsresult aStatus) {
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MOZ_DIAGNOSTIC_ASSERT(mOnStopStatus.isNothing());
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mOnStopStatus = Some(aStatus);
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nsTArray<nsWeakPtr> nodes = std::move(mNodes);
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for (nsWeakPtr& weak : nodes) {
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nsCOMPtr<nsINode> node = do_QueryReferent(weak);
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if (node) {
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NotifyNodeEvent(node);
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}
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}
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mChannel = nullptr;
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}
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void PreloaderBase::AddLinkPreloadNode(nsINode* aNode) {
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if (mOnStopStatus) {
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return NotifyNodeEvent(aNode);
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}
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mNodes.AppendElement(do_GetWeakReference(aNode));
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}
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void PreloaderBase::RemoveLinkPreloadNode(nsINode* aNode) {
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// Note that do_GetWeakReference returns the internal weak proxy, which is
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// always the same, so we can use it to search the array using default
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// comparator.
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nsWeakPtr node = do_GetWeakReference(aNode);
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mNodes.RemoveElement(node);
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if (kCancelAndRemovePreloadOnZeroReferences && mNodes.Length() == 0 &&
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!mIsUsed) {
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// Keep a reference, because the following call may release us. The caller
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// may use a WeakPtr to access this.
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RefPtr<PreloaderBase> self(this);
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RemoveSelf(aNode->OwnerDoc());
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if (mChannel) {
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mChannel->CancelWithReason(NS_BINDING_ABORTED,
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"PreloaderBase::RemoveLinkPreloadNode"_ns);
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}
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}
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}
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void PreloaderBase::NotifyNodeEvent(nsINode* aNode) {
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PreloadService::NotifyNodeEvent(
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aNode, mShouldFireLoadEvent || NS_SUCCEEDED(*mOnStopStatus));
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}
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void PreloaderBase::CancelUsageTimer() {
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if (mUsageTimer) {
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mUsageTimer->Cancel();
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mUsageTimer = nullptr;
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}
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}
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void PreloaderBase::ReportUsageTelemetry() {
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if (mUsageTelementryReported || !XRE_IsContentProcess()) {
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return;
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}
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mUsageTelementryReported = true;
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if (mKey.As() == PreloadHashKey::ResourceType::NONE) {
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return;
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}
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// The labels are structured as type1-used, type1-unused, type2-used, ...
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// The first "as" resource type is NONE with value 0.
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auto index = (static_cast<uint32_t>(mKey.As()) - 1) * 2;
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if (!mIsUsed) {
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++index;
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}
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auto label = static_cast<glean::network::RelPreloadMissRatioLabel>(index);
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glean::network::rel_preload_miss_ratio.EnumGet(label).Add();
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}
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nsresult PreloaderBase::AsyncConsume(nsIStreamListener* aListener) {
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// We want to return an error so that consumers can't ever use a preload to
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// consume data unless it's properly implemented.
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return NS_ERROR_NOT_IMPLEMENTED;
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}
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// PreloaderBase::RedirectRecord
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already_AddRefed<nsIURI> PreloaderBase::RedirectRecord::URINoFragment() const {
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nsCOMPtr<nsIURI> noFragment;
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MOZ_ALWAYS_SUCCEEDS(NS_GetURIWithoutRef(mURI, getter_AddRefs(noFragment)));
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return noFragment.forget();
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}
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nsCString PreloaderBase::RedirectRecord::Fragment() const {
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nsCString fragment;
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mURI->GetRef(fragment);
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return fragment;
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}
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// PreloaderBase::UsageTimer
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NS_IMPL_ISUPPORTS(PreloaderBase::UsageTimer, nsITimerCallback, nsINamed)
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NS_IMETHODIMP PreloaderBase::UsageTimer::Notify(nsITimer* aTimer) {
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if (!mPreload || !mDocument) {
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return NS_OK;
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}
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MOZ_ASSERT(aTimer == mPreload->mUsageTimer);
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mPreload->mUsageTimer = nullptr;
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if (mPreload->IsUsed()) {
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// Left in the hashtable, but marked as used. This is a valid case, and we
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// don't want to emit a warning for this preload then.
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return NS_OK;
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}
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mPreload->ReportUsageTelemetry();
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// PreloadHashKey overrides GetKey, we need to use the nsURIHashKey one to get
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// the URI.
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nsIURI* uri = static_cast<nsURIHashKey*>(&mPreload->mKey)->GetKey();
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if (!uri) {
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return NS_OK;
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}
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nsAutoCString spec;
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NS_GetSanitizedURIStringFromURI(uri, spec);
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nsContentUtils::ReportToConsole(
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nsIScriptError::warningFlag, "DOM"_ns, mDocument,
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PropertiesFile::DOM_PROPERTIES, "UnusedLinkPreloadPending",
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nsTArray<nsString>({NS_ConvertUTF8toUTF16(spec)}));
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return NS_OK;
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}
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NS_IMETHODIMP
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PreloaderBase::UsageTimer::GetName(nsACString& aName) {
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aName.AssignLiteral("PreloaderBase::UsageTimer");
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return NS_OK;
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}
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} // namespace mozilla
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